High-throughput Quantification

High-throughput quantification is the rapid, systematic measurement of biological molecules, cells, or phenotypes across large numbers of samples, enabling researchers to detect patterns that small-scale experiments may miss. It works by combining parallelized assays with standardized sample handling, automated detection, and computational analysis to convert signals such as fluorescence, absorbance, or image features into comparable numerical data. In biology, this approach supports screening for genetic, cellular, or drug-induced effects, while statistical normalization and quality control help distinguish meaningful changes from technical variation. Its scale improves experimental efficiency and can reveal population-level relationships that guide mechanistic studies and therapeutic development.

High-throughput Quantification - Related Videos

Research

JoVE Journal - Immunology and Infection
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ScanLag: High-throughput Quantification of Colony Growth and Lag Time

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Cited by 66 •

2014

ScanLag is a high-throughput method for measuring the delay in growth, namely lag time, as well as the growth rate of colonies for thousands of cells in parallel. Screening using ScanLag enables the discrimination between long lag-time and slow growth at the level of a single variant.

Research

JoVE Journal - Biology

High-throughput Screening for Chemical Modulators of Post-transcriptionally Regulated Genes

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2015

Here we describe a cell-based reporter gene assay as a valuable tool to screen chemical libraries for compounds modulating post-transcriptional control mechanisms exerted through 3’ UTR.

Research

JoVE Journal - Neuroscience
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Two Algorithms for High-throughput and Multi-parametric Quantification of Drosophila Neuromuscular Junction Morphology

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Cited by 11 •

2017

Two image analysis algorithms, "Drosophila NMJ Morphometrics" and "Drosophila NMJ Bouton Morphometrics" were created, to automatically quantify nine morphological features of the Drosophila neuromuscular junction (NMJ).

Research

JoVE Journal - Biology
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Quantification of dsDNA using the Hitachi F-7000 Fluorescence Spectrophotometer and PicoGreen Dye

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Cited by 6 •

2010

Demonstration of quantification of dsDNA using Molecular Probes PicoGreen dye and Hitachi F-7000 Fluorescence Spectrophotometer equipped with a microplate reader accessory.

Research

JoVE Journal - Biochemistry
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High-Throughput Screening to Obtain Crystal Hits for Protein Crystallography

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Cited by 16 •

2023

This protocol details high-throughput crystallization screening, ranging from the 1,536 microassay plate preparation to the end of a 6 week experimental time window. Details are included about the sample setup, the imaging obtained, and how users can perform analyses using an artificial intelligence-enabled graphical user interface to quickly and efficiently identify macromolecular crystallization conditions.

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